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M Yuan

Publications and source records attributed to M Yuan.

At least 91 records · Page 5Linked to original sources

[The expression of Tn and S-Tn antigens in cancer and pre-malignant lesion of colorectal tissues by enzyme immunohistochemical method].

Expression of Tn and S-Tn antigens was examined by enzyme immunohistochemical SABC method in cancer, adenoma, hyperplastic polyps, normal adult and fetal colorectal tissues. Both antigens were proved to be oncofetal colorectal cancer-associated. S-Tn was considered to be the better marker, which give no expression in normal adult colorectal tissues, but does express in 81.3% of the cancer tissues, as well as in adenoma. S-Tn increased parallelly with the development of malignant potential changes, such as increasing of size, degree of dysplasia, and increase of villous histological patterns. Experimental data also demonstrated that in colonic cancer cells, a special sialic acid transferase, which is not existent in normal adult colon epithelium, partly changes Tn antigen to S-Tn; thus, T, Tn, and S-Tn antigens are possible to be coexistent in colorectal carcinoma.

Antigens, Neoplasm↗

Immunohistochemical comparison of Lea, monosialosyl Lea (CA 19-9), and disialosyl Lea antigens in human colorectal and pancreatic tissues.

The CA 19-9 antigen is a monosialosyl Lea blood group antigen which has been shown to be a useful tumor-associated antigen for the diagnosis of gastrointestinal cancers. Recently, a sialylated derivative of this antigen, disialosyl Lea, was isolated from a colon cancer liver metastasis and a monoclonal antibody (FH7) recognizing this novel determinant was developed. The present study simultaneously compared the expression of Lea, monosialosyl Lea, and disialosyl Lea antigens in a variety of nonmalignant, premalignant, and malignant tissues of the colorectum and pancreas with an aim toward elucidating whether disialosyl Lea is expressed as a tumor-associated antigen. In normal colonic mucosa, disialosyl Lea expression closely resembled Lea expression in overall frequency, segmental distribution, and cellular localization whereas monosialosyl Lea (CA 19-9) was essentially absent. Along the crypt axis, Lea was more often expressed in goblet cells of the upper crypt whereas disialosyl Lea was found in goblet cells along the entire crypt. Fetal colonic mucosa expressed all three antigens, as did most colorectal cancers regardless of location within the colon or degree of differentiation. The majority of hyperplastic polyps and practically all adenomatous polyps also expressed these three antigens, and in adenomas, antigen expression was independent of polyp size, villous morphology, or degree of dysplasia. In the normal pancreas, the three antigens were expressed on ductal, ductular and centroacinar cells of all specimens. The majority of pancreatic cancers expressed all three antigens. Thus, in the normal colon, the absence of monosialosyl Lea (CA 19-9) in the presence of disialosyl Lea suggests that an alpha 2,6 sialyltransferase is active, which results in the masking of CA 19-9 antigen expression. These results further support the concept that specific sialyltransferases play a role in regulating the expression of tumor-associated antigens.

Antibodies, Monoclonal↗

Lex and Ley antigen expression in human pancreatic cancer.

Carbohydrate antigens are useful markers for the serological detection of pancreatic cancer. However, data concerning the expression of structurally well-defined carbohydrate antigens in normal and malignant pancreatic tissue is quite limited. The Lex and Leg antigens are closely related carbohydrate antigens synthesized on type 2 blood group oligosaccharide side chains of glycolipids and glycoproteins. Monoclonal antibodies anti-SSEA-1 and AH6 recognize "simple" Lex and Ley epitopes, respectively, regardless of the length of the carrier carbohydrate. Other monoclonal antibodies recognize Lex (FH4), sialyl Lex (FH6, IB9) or Ley (KH1, CC-1, CC-2) carried only by elongated type 2 side chains with or without internal alpha 1,3 fucosyl substitution. The present comparative immunohistochemical study used tissues of normal pancreas, chronic pancreatitis, and pancreatic cancer to determine the normal expression of Lex and Ley antigens in the pancreas and to elucidate any cancer-associated alterations. Lex-related antigens were not expressed in normal pancreas, expressed in only 10-20% of chronic pancreatitis tissues, but expressed in 50-70% of pancreatic cancer tissues. The frequency of Lex-related antigen expression in pancreatic cancer tissues was lowest in poorly differentiated cancers. Within a given specimen, at least three or all four of the Lex recognizing monoclonal antibodies were simultaneously expressed. Unlike Lex antigens, Ley-related antigens were expressed in 32-77% of specimens of normal pancreas, with similar frequencies in specimens of chronic pancreatitis and pancreatic cancer. In normal pancreas, simple Ley was expressed by both ductal and acinar cells, but extended Ley antigens were expressed only by acinar cells. In pancreatic cancer, extended Ley antigen expression was found in less than 10% of poorly differentiated tumors. Coexpression among the Ley-related antigens was less common than with the Lex-related antigens. Also in cancer specimens, simple Lex and simple Lex antigens were often concordantly expressed, whereas extended Lex and extended Ley antigen expression was often discordant. Hyperplastic ducts and ductules associated with pancreatic cancer expressed Lex-related antigens more frequently than morphologically similar lesions associated with chronic pancreatitis. These results demonstrate that Lex-related antigens are cancer-associated determinants in the human pancreas. The discrepant expression between Lex and Ley antigens in these tissues implies altered regulation of fucosyltransferase activity associated with the malignant state.

Antibodies, Monoclonal↗

Cancer-associated alterations of blood group antigen expression in the human pancreas.

Certain alterations of blood group substance (BGS) expression have been observed in gastrointestinal cancer tissues. However, in the pancreas little is known about BGS expression by normal or malignant tissue. The present immunohistochemical study analyzed simultaneously the expression of A, B, H, Lewisa (Lea), and Lewisb (Leb) antigens in specimens of normal pancreas, chronic pancreatitis, and pancreatic carcinoma (primary and metastatic). In normal pancreas all five antigens were expressed in ducts, ductules, and acini, but not in islets. Acinar cells expressed A, B, H, and Leb in supranuclear cytoplasm, whereas Lea was found mainly on centroacinar cells. Only BGSs that were appropriate for the host's blood type were expressed, except for one case of Lea deletion. BGS expression by chronic pancreatitis tissue closely resembled that by normal tissue. In primary pancreatic cancer two cancer-associated alterations were noted that were not found in either normal pancreas or chronic pancreatitis. Deletion of an expected A, B, H, or Leb antigen occurred in approximately 25% of cases, particularly in more poorly differentiated cancers. Incompatible expression of an unexpected A or B antigen occurred in 33% of cases, regardless of degree of differentiation. Metastatic pancreatic cancers also exhibited BGS deletion and incompatibility. In both primary and metastatic cancers the incidence of incompatible A or B expression was higher in cancers from the United States than in cancers from Japan, but the incidence of BGS deletion was similar between the two countries. It was concluded that deletion of A, B, H, or Leb antigens and incompatible expression of A or B antigens are cancer-associated events in the pancreas.

ABO Blood-Group System↗

[Pancreatic cancer-associated new carbohydrate antigen].

Antigen T (Thomsen-Friedenreich), a precursor of blood group MN antigens, with the determinant of a carbohydrate (Gal-GalNac), antigen Lewisx (Lex), a trisaccharide found on Type 2 blood group oligosaccharide chains, Sialo-Lex, the derivatives: of Lex and Lewisy (Ley), a difucosylated tetrasaccharide have, behaved as the oncodevelopment tumor-associated antigens in human colon. In the present study, using monoclonal antibodies in immunohistochemical method, the expression and distribution of these antigens in pancreatic cancer and normal pancreatic tissue were observed and compared. It was found that monoclonal antibody AH8-258 derived against antigen T, SSEA-1 and FH-4 derived against short and long chain antigens Lex, FH-6 and IB 9 derived against Sialo-Lex antigen preferentially stained most pancreatic cancer tissues but rarely the normal pancreatic tissues. However, monoclonal antibodies AH-6, KH-1 and CC-1, derived against antigen Ley, stained the majority of tissues regardless of being malignant or normal and were not able to differentiate cancer from the normal tissues. Antigens T, Lex, Sialo-Lex and Ley were also expressed in chronic pancreatitis but the chance of monoclonal antibodies staining in these tissues (18 approximately 36%) was markedly lower than the staining in cancer tissues (54 approximately 77%) except Ley. It is suggested that in human pancreas, haptens T, Lex and Sialo-Lex, the oncodevelopmental cancer-associated antigens, are highly specific markers for malignancy and likely helpful in the early diagnosis of pancreatic cancer.

Adenocarcinoma↗

Expression of LewisX and sialylated LewisX antigens in human colorectal polyps.

The LewisX (LeX) antigen [characterized by trisaccharide Gal beta 1----4 (Fuc alpha 1----3)N-acetylglucosamine] is an oncodevelopmental antigen in the human colon. Monoclonal antibodies (MoAbs), anti-SSEA-1 and AH8-183, which recognize LeX antigen either on short oligosaccharide side chains or as a terminal immunodeterminant on longer carbohydrate side chains of glycoconjugates, bind to most colon cancer tissues but also to some normal colon mucosae. However, the monoclonal antibodies FH1, FH4, FH6, and IB9, which recognize extended difucosylated and trifucosylated LeX structures or their sialylated derivatives, are more cancer-associated because they rarely bind to normal colon mucosa. In the present study, these MoAbs were used to compare the expression of various LeX-related antigens in premalignant (adenomatous) and nonpremalignant (hyperplastic) colorectal polyps. Antigen expression in polyps was also compared to antigen expressions of normal colon mucosa and colon cancer tissues. The four MoAbs recognizing extended LeX antigens bound to adenomatous polyps (APs) significantly more than to hyperplastic polyps (HPs). In contrast, anti-SSEA-1 and AH8-183 recognizing monofucosyl LeX were less able to distinguish between APs and HPs. In APs, staining with the four MoAbs recognizing extended LeX antigens correlated with the premalignant parameters of larger polyp size, more severe dysplasia, and increased villose component. However, staining with AH8-183 correlated only with polyp size, and anti-SSEA-1 correlated only with polyp size and degree of dysplasia. In general, the staining frequency of HPs was similar to that of normal colon mucosa, although FH6, which did not stain any specimens of normal mucosa, stained a few HPs. The staining frequency of APs was less than that of colon cancer tissues, but these differences were generally not statistically significant. In conclusion, extended LeX antigens and their sialylated derivatives are cancer-associated antigens that are expressed preferentially in premalignant colon polyps, that tend to correlate with malignant potential in these polyps, and that may eventually help to define mechanisms involved in the polyp-to-cancer sequence.

Antibodies, Monoclonal↗

Cancer-associated alterations of blood group antigen expression in human colorectal polyps.

Human colorectal carcinoma tissues may exhibit several patterns of altered blood group substance (BGS) expression: reappearance of A, B, H, or Lewisb antigens in distal colon; deletion of BGS in the proximal colon with or without precursor substance accumulation; and incompatible BGS expression in proximal or distal colon. The present study evaluated these cancer-associated alterations in colorectal polyps with different malignant potential. With respect to ABH antigens, hyperplastic polyps (HPs), considered to have no malignant potential, did not exhibit incompatibility and only a few cases demonstrated BGS reappearance or deletion. Adenomatous polyps (APs) however, frequently reexpressed ABH antigens or expressed incompatible BG-A or B in 27% of polyps; one specimen demonstrated BG-B deletion. Precursor expression was not found in HPs but was frequently observed in APs. Reappearance of ABH in distal polyps was significantly correlated with increasing grade of dysplasia, but was not significantly correlated with polyp size or histological type. With respect to Lewis antigen expression, Lewisb reappearance occurred in almost every distal polyp, and Lewisa-Lewisb coexpression was also quite common. Lea deletion was frequently noted, especially in HP, but the significance of this finding is unclear. This study indicates that several antigenic alterations that occur in colorectal cancer tissues also appear in premalignant polyps, and often in early stages of the neoplastic process. The observation that incompatible expression of BG-A or B occurs only in AP and cancer tissues (as well as mucosa adjacent to cancer) but not in fetal colonic mucosa, adult normal colonic mucosa, or HP, suggests that this may be a cancer-specific phenomenon.

ABO Blood-Group System↗

Expression of LeY and extended LeY blood group-related antigens in human malignant, premalignant, and nonmalignant colonic tissues.

The LeY determinant, a difucosylated type 2 blood group-related antigen, is a positional isomer of the Leb blood group antigen and a fucosylated derivative of the LeX antigen. The LeX antigen behaves like an oncodevelopmental tumor-associated antigen in human colon cancer, and extended polyfucosyl LeX antigens are more specific for colon cancer tissues than are simple, monofucosyl LeX antigens. The present investigation compared the expression of simple and extended LeY antigens in a variety of malignant and nonmalignant human colonic tissues to gain insight into the normal distribution and cancer-associated expression of these antigens. Monoclonal antibody AH-6, which recognizes the LeY epitope irrespective of its carrier carbohydrate chain, stained the majority of specimens regardless of malignant potential or location within the colon. In contrast, CC-1 and CC-2 monoclonal antibodies, which recognize extended LeY structures, and KH-1, which is specific to trifucosyl LeY, preferentially stained malignant colonic tissues and rarely stained normal colonic mucosae. Mucosa immediately adjacent to cancer usually stained with AH-6 but not with KH-1, CC-1, or CC-2. Extended or trifucosyl LeY antigen expression was limited exclusively to premalignant (adenomatous) polyps and was invariably absent from nonpremalignant (hyperplastic) polyps. Moreover, among adenomatous polyps, extended LeY antigen expression tended to correlate with three parameters of malignant potential: larger polyp size; villous histology, and severe dysplasia. AH-6 failed to distinguish between hyperplastic and adenomatous polyps. In second-trimester fetal colonic mucosa, AH-6 bound to both proximal and distal segments whereas KH-1, CC-1, and CC-2 bound only to proximal segments. We conclude that in human colon, the LeY hapten is an oncodevelopmental cancer-associated antigen and extended LeY antigens are highly specific markers for malignancy and premalignancy.

Antibodies, Monoclonal↗

Lewisx- and sialylated Lewisx-related antigen expression in human malignant and nonmalignant colonic tissues.

Biochemical studies have revealed that some normal cells express the LeX trisaccharide Gal beta 1----4(Fuc alpha 1----3)GlcNAc either on short-chain fucolipids or as a single immunodeterminant on glycolipid oligosaccharide side chains. Cancer cells, including those from colonic adenocarcinomas, express this antigen on longer type 2 blood group side chains as difucosylated or trifucosylated fucolipids. Moreover, sialylated forms of difucosylated LeX also accumulate in colon cancer but not in normal colonic mucosa. In the present study, six monoclonal antibodies which selectively recognize the various LeX-related antigens were used for immunohistochemical examination of these antigens in serial sections of human colonic tissue. All of these antigens were oncodevelopmental in human colon. Monoclonal antibodies anti-SSEA-1 and AH8-183, directed against short-chain, monofucosylated LeX, were unable to discriminate well between normal and malignant colonic tissue. However, the other four antibodies were much better at distinguishing cancer from normal tissue. FH6 was the most specific in that no normal tissues bound this antibody. However, FH6 failed to stain poorly differentiated cancers and some colloid-type carcinomas. FH4, which was also highly specific, stained almost all cancers, regardless of the degree of differentiation. FH4 primarily stained cancer cell cytoplasm, whereas the sialylated antigen defined by FH6 predominantly stained cell membranes. Differences were noted between the expression of LeX-related antigens in autopsied normal mucosa compared to mucosa of benign colonic diseases. Monoclonal antibodies recognizing long-chain polyfucosylated and sialylated LeX-related antigens appear to be useful tools for detection of colon cancer.

Antibodies, Monoclonal↗

Comparison of T-antigen expression in normal, premalignant, and malignant human colonic tissue using lectin and antibody immunohistochemistry.

The Thomsen-Friedenreich antigen has been implicated as a cancer-associated antigen in some human organs including the colon. Most previous studies of Thomsen-Friedenreich antigen expression in the colon used peanut agglutinin (PNA) to identify the immunodeterminant in tissues. However, evidence from other organs suggests that anti-T antibodies have specificities which differ from those of peanut lectin. To elucidate the nature of the T-immunodeterminant in colonic mucosa, we compared staining by PNA to that of a polyclonal (PAb) and monoclonal (MAb) anti-T antibody. PNA demonstrated the best sensitivity (91%) in cancer tissues but the lowest specificity (68%) in normal mucosa. Staining with MAb was only 76% sensitive but 100% specific. Sensitivity and specificity of PAb were intermediate between PNA and MAb. MAb stained fewer adenomatous polyps than either PNA or PAb, but staining appeared to correlate with premalignant features of the polyps. PNA-binding sites were more prevalent than either PAb or MAb in hyperplastic polyps. Cell cytoplasm was stained by both antibodies more often than by PNA. The majority of fetal colonic specimens stained with all three reagents suggesting that Thomsen-Friedenreich antigen may be an oncodevelopmental antigen in human colon. Differences in staining patterns in some tissues may be due to different antigenic specificities among PNA, PAb, and MAb.

Adenoma↗

Purification and primary structures of duck fibrinopeptides A and B.

Duck fibrinopeptides A and B were purified by Dowex 50 W X 2 ion exchange resin and DEAE-Sepharose CL-6B. The complete primary structures of duck fibrinopeptides A and B were determined by manual Edman Sequence determination. The primary structure of duck fibrinopeptide A is pyr. Asp. Gly. Lys. Ser. Ser. Phe. Gln. Lys. Glu. Gly. Gly. Gly. Val. Arg., and that of duck fibrinopeptide B is Pyr. Ala. Ser. Thr. Asp. Tyr. Asp. Asp. Glu. Asp. Glu. Ser. Thr. Val. Pro. Glu. Ala. Arg.

Amino Acids↗

Distribution of blood group antigens A, B, H, Lewisa, and Lewisb in human normal, fetal, and malignant colonic tissue.

In humans, most blood group substances (BGS) are expressed throughout the fetal colon but are absent from the distal portion of adult colon. Cancers of the distal colon frequently reexpress BGS thereby suggesting that these antigens behave as oncofetal antigens at this organ site. We used a sensitive immunoperoxidase method with monoclonal antibodies directed against blood groups A, B, O (H), Lewisa and Lewisb to systematically evaluate BGS expression in fetal colon, normal adult colon from immediate autopsies of kidney donors, mucosa adjacent to cancer (transitional mucosa) and colorectal cancer tissues. In normal colon, BG-A, B, H, and Lewisb were expressed in proximal but not distal colon, whereas Lewisa was distributed uniformly throughout the colon. In colon cancer, and fetal colon, the proximal-distal gradient of BG-A, B, H, and Lewisb expression was abolished because of enhanced distal expression of these antigens. In cancer tissues, three patterns of altered BGS expression emerged: (a) incompatible expression of BG-A or BG-B (over 50% of patients); (b) deletion of BGS; and (c) precursor BG-H accumulation (80% of 25 tumors). BGS staining of transitional mucosa closely resembled that of the adjacent tumor except that no examples of BGS deletion were encountered in transitional mucosa. The goblet cell secretory vacuole accounted for most of the BGS expression in normal colon, but cancer cells demonstrated differentiation-dependent antigenic expression such that well-differentiated tumors expressed BGS on cell apical membranes and glandular contents, but poorly differentiated cancers exhibited diffuse cytoplasmic staining. These findings confirm the oncofetal nature of BGS in distal colon cancer, and provide immunohistochemical evidence for a diverse repertoire of altered antigen expression in colon cancer. Further investigation is needed to elucidate the possible genetic and biochemical mechanisms involved.

ABO Blood-Group System↗

Human pancreatic cancer-associated antigens detected by murine monoclonal antibodies.

Two monoclonal antibodies, YPan1 and YPan2, were produced from spleen cells of mice immunized against a human pancreatic cancer cell line, Capan-2, which also reacted with eight other human pancreatic carcinoma cell lines and with sections of cancerous human pancreas tissue. Reactivity was also found with colonic and stomach carcinoma tissues. Whereas YPan1 reacted strongly with normal pancreatic tissue, it bound weakly, if at all, to a variety of other normal tissues. YPan1 reacted with both the membranes and cytoplasm of pancreatic adenocarcinoma cells and with constituents of normal pancreatic ductal cells and duct luminal contents. YPan2, on the other hand, reacts to a greater degree with intracytoplasmic constituents in pancreatic adenocarcinoma cells. Unlike YPan1, YPan2 reacted weakly with only one of 16 cases of normal pancreas. Pretreatment of the tissue with neuraminidase abolished YPan1's reactivity, which indicated that sialic acid may be involved in the antigenic activity of the molecule(s) recognized by YPan1. Neuraminidase pretreatment had no effect on YPan2 reactivity. Neither YPan1 nor YPan2 competed with 19-9 monoclonal antibody in binding to soluble CA 19-9 antigen. These results suggest that these monoclonal antibodies are of potential use in the diagnosis of pancreatic carcinoma.

Antibodies, Monoclonal↗

Study on the thrombin-like enzyme preferentially releasing fibrinopeptide B from the snake venom of Agkistrodon halys Pallas.

Three components with arginine esterase activities were found in the venom of the Chinese pit viper (Agkistrodon halys Pallas). They were identified as bradykinin releasing, thrombin-like and fibrinogenolytic enzymes respectively. The thrombin-like enzyme of A. halys Pallas was purified to a homogeneous state. It was a glycoprotein with molecular weight of about 43,000. Though this enzyme displayed a higher esterase activity on BAEE than trypsin and human thrombin, it showed very weak clotting ability on fibrinogen. The kinetic analysis of the release of fibrinopeptides A (FPA) and B (FPB) showed that the action mode of this enzyme on fibrinogen was just opposite to that of mammalian thrombin. FPB was first released, followed by FPA after a long lag period.

Amino Acids↗

Elevation of postmortem triiodothyronine in sudden infant death syndrome and in infants who died of other causes: a marker of previous health.

We measured serum concentrations of thyroxine (T4), triiodothyronine (T3), reverse T3, free T4, thyroid-stimulating hormone, and cortisol in 62 victims of sudden infant death syndrome (SIDS) in 30 infants who died of known causes and in 15 living controls. The mean T3 value was elevated in 69% of those with SIDS. 37% of the others who died, and in no control infants. After excluding those who died of known cause who had abnormal thyroid function (abnormal postmortem concentrations of T4, free T4, or reverse T3), the T3 values were elevated in 63% of those remaining. When the data were analyzed on the basis of case histories and autopsy findings, those infants who were in good health and died suddenly of accidental causes had an elevation in mean T3 similar to that seen in SIDS victims; those who died under conditions known to alter thyroid metabolism did not. The T4, free T4, reverse T3, thyroid-stimulating hormone, and cortisol values were not useful in differentiating those with SIDS from the living controls, or those who were healthy at the time of death. We were unable to find any difference in T3 serum concentrations between the total group who had SIDS and those who had SIDS with minor infections, with petechiae on intrathoracic organs, with premature birth, or those who were resuscitated. Our data point out the importance of using appropriate controls when evaluating SIDS. The normal reverse T3 values in SIDS, as well as confirmation of the normal T4 and free T4 values, constitute evidence against chronic persistent alveolar hypoventilation or prolonged episodes of hypoxia immediately preceding death from SIDS.

Female↗